Fracture of solid state laser slabs
- 1 July 1986
- journal article
- Published by AIP Publishing in Journal of Applied Physics
- Vol. 60 (1) , 69-77
- https://doi.org/10.1063/1.337630
Abstract
Fracture due to thermal stress limits the power output potential of modern, high average power slab lasers. Here the criteria for slab fracture and the nature of the surface flaws which constitute the strength-controlling defects are reviewed. Specific fracture data for gadolinium scandium gallium garnet and LHG-5 phosphate glass with different surface finishes are evaluated in the context of assigning appropriate slab operating parameters using Wiebull statistics. These examples illustrate both the danger of design using brittle components without adequate fracture testing, and the inadequacy of design methods which use a fixed safety factor, for this class of materials. Further consideration reveals that operation of slab lasers in contact with an aqueous coolant may lead to strength degradation with time. Finally, the evolution of the failure process in which a characteristic midplane crack forms is outlined, and the pertinent parameters for avoiding slab fracture are identified.This publication has 8 references indexed in Scilit:
- Spectroscopic, optical, and thermomechanical properties of neodymium- and chromium-doped gadolinium scandium gallium garnetJournal of the Optical Society of America B, 1986
- Strengthened solid-state laser materialsApplied Physics Letters, 1985
- The slab geometry laser - Part I: TheoryIEEE Journal of Quantum Electronics, 1984
- The nature of machining damage in brittle materialsProceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences, 1983
- Future development of high-power solid-state laser systemsSoviet Journal of Quantum Electronics, 1983
- Fatigue in ceramicsInternational Journal of Fracture, 1980
- Combining Data for Improved Weibull Parameter EstimationJournal of the American Ceramic Society, 1980
- Large-Aperture Glass Disk Laser SystemJournal of Applied Physics, 1969